Tanaka Mikiei, Chock P Boon, Stadtman Earl R
Laboratory of Biochemistry, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892-8012, USA.
Proc Natl Acad Sci U S A. 2007 Jan 2;104(1):66-71. doi: 10.1073/pnas.0609737104. Epub 2006 Dec 26.
To investigate the effect of RNA oxidation on normal cellular functions, we studied the translation of nonoxidized and oxidized luciferase mRNA in both rabbit reticulocyte lysate and human HEK293 cells. When HEK293 cells transfected with nonoxidized mRNA encoding the firefly luciferase protein were cultured in the presence of paraquat, there was a paraquat concentration-dependent increase in the formation of luciferase short polypeptides (SPs) concomitant with an increase in 8-oxoguanosine. Short polypeptides were also formed when the mRNA was oxidized in vitro by the Fe-ascorbate-H(2)O(2) metal-catalyzed oxidation system before its transfection into cells. Translation of the in vitro oxidized mRNA in rabbit reticulocyte lysate also led to formation of SPs. The SPs formed by either procedure contained the N-terminal and the C-terminal portions of the tagged luciferase. In addition, the oxidized mRNA was able to associate with ribosomes to form polysomes similar to those formed with nonoxidized mRNA preparations, indicating that the oxidized mRNAs are mostly intact; however, their translation fidelity was significantly reduced. Nevertheless, our results indicate that the SPs were derived from both premature termination of the translation process of the oxidized mRNA and the proteolytic degradation of the modified full-length luciferase resulting from translation errors induced by oxidized mRNA. In light of these findings, the physiological consequences of mRNA oxidation are discussed.
为了研究RNA氧化对正常细胞功能的影响,我们在兔网织红细胞裂解液和人HEK293细胞中研究了非氧化型和氧化型荧光素酶mRNA的翻译情况。当用编码萤火虫荧光素酶蛋白的非氧化型mRNA转染的HEK293细胞在百草枯存在的情况下培养时,荧光素酶短肽(SPs)的形成呈百草枯浓度依赖性增加,同时8-氧代鸟苷也增加。当mRNA在转染到细胞之前通过铁-抗坏血酸-H₂O₂金属催化氧化系统在体外被氧化时,也会形成短肽。体外氧化的mRNA在兔网织红细胞裂解液中的翻译也导致了SPs的形成。通过这两种方法形成的SPs包含标记荧光素酶的N端和C端部分。此外,氧化的mRNA能够与核糖体结合形成多核糖体,类似于用非氧化型mRNA制剂形成的多核糖体,这表明氧化的mRNA大多是完整的;然而,它们的翻译保真度显著降低。尽管如此,我们的结果表明,SPs既来源于氧化mRNA翻译过程的提前终止,也来源于氧化mRNA诱导的翻译错误导致的修饰全长荧光素酶的蛋白水解降解。鉴于这些发现,我们讨论了mRNA氧化的生理后果。